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tau d1m9x  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc tau d1m9x
    A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using <t>D1M9X</t> antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.
    Tau D1m9x, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 95/100, based on 183 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+anti+tau/bio_rxiv__64898__2026__02__22__707328-151-8-10?v=Cell+Signaling+Technology+Inc
    Average 95 stars, based on 183 article reviews
    tau d1m9x - by Bioz Stars, 2026-07
    95/100 stars

    Images

    1) Product Images from "p75 neurotrophin receptor signaling through the RhoA/ROCK pathway contributes to Alzheimer’s Disease tauopathy"

    Article Title: p75 neurotrophin receptor signaling through the RhoA/ROCK pathway contributes to Alzheimer’s Disease tauopathy

    Journal: bioRxiv

    doi: 10.64898/2026.02.22.707328

    A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using D1M9X antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.
    Figure Legend Snippet: A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using D1M9X antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.

    Techniques Used: Western Blot



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    A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using <t>D1M9X</t> antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.
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    Image Search Results


    Tau staining patterns in organoids display heterogeneity between and within different treatment groups (A–C) Shows the expression pattern of PHF-1 (A), T22 (B), and tau-5 (C) across the different samples following αSYN, Aβ, and tau exposure; both direct (Fibril) and astrocyte-mediated (Astro). Pictures are from two individual organoids per group. (D) High magnification example images of the tau-positive signal patterns (PHF-1 is from astrocyte-mediated αSYN exposure, T22 and tau-5 are from direct Aβ-treated organoids). (A–C) scale bars, 250 μm, (D) scale bars, 25 μm.

    Journal: iScience

    Article Title: Exposure to fibrillar proteins leads to widespread infiltration but only mild tau pathology in cortical organoids

    doi: 10.1016/j.isci.2026.115819

    Figure Lengend Snippet: Tau staining patterns in organoids display heterogeneity between and within different treatment groups (A–C) Shows the expression pattern of PHF-1 (A), T22 (B), and tau-5 (C) across the different samples following αSYN, Aβ, and tau exposure; both direct (Fibril) and astrocyte-mediated (Astro). Pictures are from two individual organoids per group. (D) High magnification example images of the tau-positive signal patterns (PHF-1 is from astrocyte-mediated αSYN exposure, T22 and tau-5 are from direct Aβ-treated organoids). (A–C) scale bars, 250 μm, (D) scale bars, 25 μm.

    Article Snippet: Primary antibodies; Chicken polyclonal Anti-Vimentin, Rabbit polyclonal Anti-Tau (T22) (Merk), Mouse monoclonal Anti-MAP2 (Synaptic systems), Mouse monoclonal Anti-Tau (TAU-5) (ThermoFisher), Chicken polyclonal Anti-GFAP (Abcam) and Mouse monoclonal Anti-Tau (PHF-1) were diluted in 0.5% NGS 0.1% Triton X-100 in PBS and incubated overnight at 4°C.

    Techniques: Staining, Expressing

    Pathology markers in the soluble organoid fraction after 12 weeks of exposure (A) Western blots of organoid lysate supernatant from αSYN, Aβ, and tau-exposed organoids (direct and astrocyte-mediated). Blots were stained for total tau (tau-5) and pathological phospho-tau (PHF-1, T22). Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Quantification of αSYN blots. (C) Quantification of Aβ blots. (D) Quantification of tau blots. n = 6 individual organoids for control and n = 5 for the treated analyzed by one-way ANOVA, with multiple comparisons relative to control. Data are presented as mean ± SD, p values are presented as following: ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.005.

    Journal: iScience

    Article Title: Exposure to fibrillar proteins leads to widespread infiltration but only mild tau pathology in cortical organoids

    doi: 10.1016/j.isci.2026.115819

    Figure Lengend Snippet: Pathology markers in the soluble organoid fraction after 12 weeks of exposure (A) Western blots of organoid lysate supernatant from αSYN, Aβ, and tau-exposed organoids (direct and astrocyte-mediated). Blots were stained for total tau (tau-5) and pathological phospho-tau (PHF-1, T22). Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Quantification of αSYN blots. (C) Quantification of Aβ blots. (D) Quantification of tau blots. n = 6 individual organoids for control and n = 5 for the treated analyzed by one-way ANOVA, with multiple comparisons relative to control. Data are presented as mean ± SD, p values are presented as following: ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.005.

    Article Snippet: Primary antibodies; Chicken polyclonal Anti-Vimentin, Rabbit polyclonal Anti-Tau (T22) (Merk), Mouse monoclonal Anti-MAP2 (Synaptic systems), Mouse monoclonal Anti-Tau (TAU-5) (ThermoFisher), Chicken polyclonal Anti-GFAP (Abcam) and Mouse monoclonal Anti-Tau (PHF-1) were diluted in 0.5% NGS 0.1% Triton X-100 in PBS and incubated overnight at 4°C.

    Techniques: Western Blot, Staining, Control

    Pathology markers in the insoluble organoid fraction after 12 weeks of exposure (A) Western blots of organoid insoluble pellets from αSYN, Aβ and tau exposed organoids (direct and astrocyte-mediated). Blots are stained for total tau (tau-5) and pathological phospho-tau (PHF-1, T22). Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Quantification of αSYN blots. (C) Quantification of Aβ blots. (D) Quantification of tau blots. n = 5 individual organoids analyzed by one-way ANOVA, with multiple comparisons relative to control. Data are presented as mean ± SD,∗∗ p < 0.01.

    Journal: iScience

    Article Title: Exposure to fibrillar proteins leads to widespread infiltration but only mild tau pathology in cortical organoids

    doi: 10.1016/j.isci.2026.115819

    Figure Lengend Snippet: Pathology markers in the insoluble organoid fraction after 12 weeks of exposure (A) Western blots of organoid insoluble pellets from αSYN, Aβ and tau exposed organoids (direct and astrocyte-mediated). Blots are stained for total tau (tau-5) and pathological phospho-tau (PHF-1, T22). Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Quantification of αSYN blots. (C) Quantification of Aβ blots. (D) Quantification of tau blots. n = 5 individual organoids analyzed by one-way ANOVA, with multiple comparisons relative to control. Data are presented as mean ± SD,∗∗ p < 0.01.

    Article Snippet: Primary antibodies; Chicken polyclonal Anti-Vimentin, Rabbit polyclonal Anti-Tau (T22) (Merk), Mouse monoclonal Anti-MAP2 (Synaptic systems), Mouse monoclonal Anti-Tau (TAU-5) (ThermoFisher), Chicken polyclonal Anti-GFAP (Abcam) and Mouse monoclonal Anti-Tau (PHF-1) were diluted in 0.5% NGS 0.1% Triton X-100 in PBS and incubated overnight at 4°C.

    Techniques: Western Blot, Staining, Control

    Control organoids display high levels of apoptosis and native tau pathology but lack full-length tau isoforms (A) Western blot analysis of unexposed organoids shows a positive signal for pathological tau (PHF-1, T22, pS231) and the astrocytic marker GFAP. Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Relative band intensity demonstrates large variations between the native organoids. Data are presented as values for individual organoids ( n = 15), and lines represent the median. (C) Representative images from apoptotic, TUNEL-labeled cells in organoids. (D) Quantification of TUNEL-positive cells in control and fibril-exposed organoids n = 3 individual organoids. Data are presented as mean ± SD. (E) Western blot analysis demonstrates that 3R-tau is the predominant tau isoform in 26 weeks organoids and that 4R-tau isoforms can barely be detected. Corresponding NOStain total protein normalization blots and uncut membranes are shown in . Scale bars, 250 μm.

    Journal: iScience

    Article Title: Exposure to fibrillar proteins leads to widespread infiltration but only mild tau pathology in cortical organoids

    doi: 10.1016/j.isci.2026.115819

    Figure Lengend Snippet: Control organoids display high levels of apoptosis and native tau pathology but lack full-length tau isoforms (A) Western blot analysis of unexposed organoids shows a positive signal for pathological tau (PHF-1, T22, pS231) and the astrocytic marker GFAP. Corresponding NOStain total protein normalization blots and uncut membranes are shown in . (B) Relative band intensity demonstrates large variations between the native organoids. Data are presented as values for individual organoids ( n = 15), and lines represent the median. (C) Representative images from apoptotic, TUNEL-labeled cells in organoids. (D) Quantification of TUNEL-positive cells in control and fibril-exposed organoids n = 3 individual organoids. Data are presented as mean ± SD. (E) Western blot analysis demonstrates that 3R-tau is the predominant tau isoform in 26 weeks organoids and that 4R-tau isoforms can barely be detected. Corresponding NOStain total protein normalization blots and uncut membranes are shown in . Scale bars, 250 μm.

    Article Snippet: Primary antibodies; Chicken polyclonal Anti-Vimentin, Rabbit polyclonal Anti-Tau (T22) (Merk), Mouse monoclonal Anti-MAP2 (Synaptic systems), Mouse monoclonal Anti-Tau (TAU-5) (ThermoFisher), Chicken polyclonal Anti-GFAP (Abcam) and Mouse monoclonal Anti-Tau (PHF-1) were diluted in 0.5% NGS 0.1% Triton X-100 in PBS and incubated overnight at 4°C.

    Techniques: Control, Western Blot, Marker, TUNEL Assay, Labeling

    A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using D1M9X antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.

    Journal: bioRxiv

    Article Title: p75 neurotrophin receptor signaling through the RhoA/ROCK pathway contributes to Alzheimer’s Disease tauopathy

    doi: 10.64898/2026.02.22.707328

    Figure Lengend Snippet: A) Representative Western blot gels from hippocampus of 9-month-old WT, P301S, P301S; p75 -/- , P301S; p75 ΔDD/ΔDD and P301S; p75 C259A/C259A as indicated using D1M9X antibody. Molecular weights are indicated in kDa. B) Quantification of total Tau from hippocampus relative to GAPDH. N=8 mice per genotype, respectively. One-way ANOVA followed by Dunnett’s multiple comparisons test, mean ± SEM. ****p<0.0001, no significant difference between P301S; p75 -/- , P301S; p75 ΔDD/ΔDD , P301S; p75 C259A/C259A versus P301S, respectively.

    Article Snippet: Primary antibodies included P-Tau S396 (CST 9632), total Tau D1M9X (CST 46687), p75 NTR ECD (R&D AF1157), Synapsin I (Millipore AB1543), PSD95 (Sysy N3783), p-GSK3β (CST 9323), total GSK3β (CST 9315), GAPDH (Sigma-Aldrich G9545) and α-tubulin (Proteintech11224-1-AP).

    Techniques: Western Blot